Tenacibaculum maritimum can boost inflammation in Dicentrarchus labrax upon peritoneal injection but cannot trigger

Inês A Ferreira1,2,3, Paulo Santos1,2, Javier Sanz Moxó1

  • 1Interdisciplinary Centre of Marine and Environmental Research (CIIMAR), University of Porto, Porto, Portugal.

Frontiers in Immunology
|October 29, 2024
PubMed
Abstract

Insights

The infection route significantly impacts Tenacibaculum maritimum pathogenesis in European sea bass. Bath challenges caused mortality, while intraperitoneal injections showed higher survival and modulated immune responses.

Area of Science:

  • Aquatic Animal Health
  • Fish Immunology
  • Bacterial Pathogenesis

Background:

  • Tenacibaculum maritimum is a significant bacterial pathogen in aquaculture.
  • The pathogenesis and host immune response to T. maritimum are not fully understood.
  • European sea bass (D. labrax) are susceptible to bacterial infections.

Purpose of the Study:

  • To investigate the impact of different inoculation routes (intraperitoneal injection vs. bath challenge) on T. maritimum pathogenesis in European sea bass.
  • To evaluate the short-term immune response of European sea bass to T. maritimum and its extracellular products (ECPs).
  • To determine the role of ECPs in T. maritimum-induced disease.

Main Methods:

  • European sea bass were challenged via intraperitoneal injection or bath with T. maritimum cells and/or ECPs.
  • Survival rates were monitored to assess disease severity.
  • Immune parameters, oxidative stress markers, and gene expression (il1β, il6, il8, hamp1) were analyzed in blood, liver, and head-kidney tissues at various time points post-challenge.
  • Bacterial presence in blood and peritoneal cavity was investigated.

Main Results:

  • Bath challenge with T. maritimum resulted in 0% survival, while intraperitoneal injection showed 100% survival.
  • Intraperitoneal injection of ECPs increased peritoneal leukocytes, whereas BECPs (bacteria with ECPs) decreased blood leukocytes, lymphocytes, and thrombocytes.
  • Plasma bactericidal activity and some oxidative stress parameters increased 48 hours post-injection with bacteria.
  • Upregulation of pro-inflammatory genes (il1β, il6, il8, hamp1) was observed in head-kidney following ECP and BECP challenge.

Conclusions:

  • The route of infection is a critical factor in T. maritimum pathogenesis in European sea bass.
  • Intraperitoneal challenge with T. maritimum, especially with ECPs, elicits a significant inflammatory immune response.
  • Understanding these route-dependent responses is crucial for developing effective disease control strategies in aquaculture.